PORTABLE X-RAY DETECTOR HOLDER AND POSITIONER
20220354445 · 2022-11-10
Inventors
Cpc classification
A61B6/4429
HUMAN NECESSITIES
A61B6/4405
HUMAN NECESSITIES
International classification
Abstract
Disclosed are devices and methods for facilitating the obtaining of radiologic images. Some embodiments of the disclosed devices are directed to a portable x-ray holder and positioner having a base, an arm coupled to the base, and an x-ray holding mechanism coupled to the arm. In certain embodiments, the arm is configured to be rotatable and extendable. In one embodiment, the device includes a hinge coupled to the base and/or to the arm. In some embodiments, the x-ray holding mechanism includes one or more brackets coupled to the arm. In certain embodiments, the arm has a first part configured to receive a second part within the first part, and the second part is configured to be telescoped out of the first part. In one embodiment, a fastening mechanism is provided that cooperates with the hinge and the arm to maintain a desired angular position of the arm.
Claims
1. A portable x-ray detector holder and positioner comprising: a base plate; a hinge coupled to the base plate; a base arm coupled to the hinge; a fastening mechanism for facilitating an angular adjustment of the base arm relative to the base, wherein the fastening mechanism is coupled to the base arm and/or to the hinge; an extending arm configured to be received in the base arm and to be telescoped out of the base arm; a fastening mechanism for facilitating a length adjustment of the extending arm relative to the base arm, wherein the fastening mechanism is coupled to the base arm and/or to the extending arm; and an x-ray detector holding mechanism coupled to the base arm and/or to the extending arm for holding an x-ray detector.
2. The modular portable x-ray detector holder and positioner of claim 1, wherein the fastening mechanism for facilitating an angular adjustment comprises a screw.
3. The modular portable x-ray detector holder and positioner of claim 2, wherein the screw is selectively tightened or loosened to adjust the position of the base arm.
4. The portable x-ray detector holder and positioner of claim 1, wherein the x-ray detector holding mechanism comprises one or more brackets coupled to the base arm and/or to the extending arm.
5. A portable x-ray detector holder and positioner comprising: a base plate; a hinge coupled to the base plate; a first extending arm and a second extending arm each coupled to the hinge, wherein the first extending arm and the second extending arm are telescopic to permit the extension and retraction of each of the first extending arm and the second extending arm; a fastening mechanism for facilitating an angular adjustment of the base arm relative to the base, wherein the fastening mechanism is coupled to the base arm and/or to the hinge; a fastening mechanism for facilitating a length adjustment of the extending arm relative to the base arm, wherein the fastening mechanism is coupled to the base arm and/or to the extending arm; and an x-ray detector holding mechanism coupled to the base arm and/or to the extending arm for holding an x-ray detector.
6. The modular portable x-ray detector holder and positioner of claim 5, wherein the hinge is mounted to the base via a rotatable mount positioned between the base and the hinge.
7. The modular portable x-ray detector holder and positioner of claim 5, wherein the fastening mechanism is comprised of a mountable surface.
8. The modular portable x-ray detector holder and positioner of claim 7, wherein the mountable surface includes a first pin and a second pin to retain the x-ray detector in a suitable position.
9. The modular portable x-ray detector holder and positioner of claim 8, wherein the mountable surface includes a top retainer to hold the x-ray detector between the first pin, the second pin, and the retainer.
10. The modular portable x-ray detector holder and positioner of claim 9, wherein the retainer extends and retracts to form a friction fit with the x-ray detector.
11. The modular portable x-ray detector holder and positioner of claim 9, wherein the fastening mechanism for facilitating an angular adjustment comprises a screw.
12. The modular portable x-ray detector holder and positioner of claim 2, wherein the screw is selectively tightened or loosened to adjust the position of the first extending arm and the second extending arm.
13. The portable x-ray detector holder and positioner of claim 1, wherein the x-ray detector holding mechanism comprises one or more brackets coupled to the base arm and/or to the extending arm.
14. A method of obtaining radiologic images, the method comprising: providing an x-ray detector holder and positioner, the x-ray detector holder and positioner comprising: a base; a rotatable and extendable arm coupled to the base; and an x-ray detector holding mechanism coupled to said arm; adjusting an angle of said arm to a desired angle; adjusting a length of said arm to a desired length; attaching an x-ray detector to said x-ray detector holding mechanism; and positioning the x-ray detector holder and positioner relative to a patient to facilitate obtaining the radiologic image.
15. The method of claim 14, wherein the x-ray detector holder and positioner further comprises a hinge coupled to said arm.
16. The method of claim 14, wherein the x-ray detector holding mechanism comprises at least one bracket coupled to said arm.
17. The method of claim 14, wherein said arm comprises a first structure configured to receive a second structure, and wherein the second structure is configured to be telescoped out of the first structure.
18. The method of claim 14, comprising a first extending arm and a second extending arm each coupled to the base.
19. The method of claim 18, further comprising a rotatable mount positioned between the base and a hinge.
20. The method of claim 19, wherein the hinge comprises a screw.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] A more complete understanding of the embodiments, and the attendant advantages and features thereof, will be more readily understood by references to the following detailed description when considered in conjunction with the accompanying drawings wherein:
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DETAILED DESCRIPTION
[0023] The specific details of the single embodiment or variety of embodiments described herein are set forth in this application. Any specific details of the embodiments are used for demonstration purposes only, and no unnecessary limitation or inferences are to be understood therefrom.
[0024] Before describing in detail exemplary embodiments, it is noted that the embodiments reside primarily in combinations of components related to the system. Accordingly, the device components have been represented where appropriate by conventional symbols in the drawings, showing only those specific details that are pertinent to understanding the embodiments of the present disclosure so as not to obscure the disclosure with details that will be readily apparent to those of ordinary skill in the art having the benefit of the description herein.
[0025] In some embodiments, the invention is directed to an x-ray detector holder and positioner that facilitates adjusting the angle and position of the x-ray detector. Known x-ray detector holders are typically stationary and hold the x-ray detector only at a 90-degree angle. Disclosed embodiments of the invention facilitate adjusting the angle of the x-ray detector at least from 0- to 90-degrees.
[0026] In certain embodiments, the x-ray detector holder and positioner has an advantageous size and portability. Known x-ray detector holders are large, heavy, and awkward in shape, which limits where an x-ray detector holder can be used and/or stored. Inventive embodiments of the x-ray detector holder and positioner disclosed here are lightweight and ergonomically designed so that that the x-ray detector holder and positioner can be transported and used in a variety of locations or settings (for example, x-ray room, portable machine, trauma, and the like). Some embodiments of the x-ray detector holder and positioner disclosed herein are convenient to store when not in use, leaving room for other equipment.
[0027] Embodiments of the invention provide various advantages over known methods. Some embodiments of the invention are lightweight and therefore easier to carry than current x-ray detector holders. Certain embodiments of the invention are ergonomic and enable the technician to easily store the x-ray holder and positioner, whether on a portable machine or in an x-ray room. Advantageously, certain embodiments of invention disclosed herein facilitate adjusting the angle of the x-ray detector, thereby facilitating improving the comfort of the patient and allowing the technician to perform the exam more efficiently. The more comfortable the patient is, the more likely that the technician will obtain clear and sharp images for a physician to read, thereby improving the patient's care and diagnosis.
[0028] In one embodiment, the x-ray detector holder and positioner can be used in various imaging settings, such as a hospital, outpatient center, urgent care, orthopedic offices, and more.
[0029] In some embodiments, the invention is directed to a durable, lightweight x-ray holder and positioner to assist radiologic technicians and patients during exams. In some embodiments, the x-ray holder and positioner is configured to hold an x-ray detector at a specific place and angle to improve the comfort of a patient and to enable the technician to more easily position the patient and to more efficiently perform an exam.
[0030] In some embodiments, the x-ray holder and positioner is configured to be ergonomic and lightweight to use in the x-ray room, on portables, and in trauma exams. In certain embodiments, the x-ray holder and positioner is configured to provide a steady foundation, so the x-ray detector remains in position throughout the exam; and the x-ray detector holder and positioner enables the technician to adjust the angle of the x-ray detector's position to assist the patient in maintaining proper radiographic positioning and to facilitate a more efficient exam for the technician.
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[0032] In one embodiment, arm 115A, 115B is an extendable structure having base arm 115A and extending arm 115B. In some embodiments, both base arm 115A and extending arm 115B can be about 10-in long; however, in certain embodiments base arm 115A can have a length that is different from the length of extending arm 115B. In certain embodiments, base arm 115A is configured to receive within extending arm 115B, such that extending arm 115B substantially fits completely within base arm 115A and can be telescoped out of base arm 115A a length substantially as long as the length of extending arm 115B. In some embodiments, there are multiples of extending arm 115B that are coupled to one another to provide any suitable extension desired for the task of obtaining radiologic images. In certain embodiments, base arm 115A and extending arm 115B are structures that can be coupled to each other at varying lengths, without extending arm 115B being necessarily received within base arm 115A.
[0033] In some embodiments, a fastening mechanism such as arm screw 125 can be provided to secure extending arm 115B to base arm 115A to hold extending arm 115B at a desired length while in use. In one embodiment, one end of base arm 115A is provided with bracket 130A and one end of arm 115B is provided with bracket 130B for holding an x-ray detector (not shown) in place while in use.
[0034] X-ray holder and positioner 100 enables improving the comfort of the patient and improving the performance efficiency of the technician. To use the x-ray holder and positioner 100, the x-ray detector is placed within brackets 130A, 130B. Depending on the desired location of the x-ray detector, extending arm 115B is adjusted to a desired length, then arm screw 125 is tightened to hold the x-ray detector in place. Next, the angle of arm 115A, 115B is adjusted until the x-ray detector is in a position where the patient is comfortable, and the technician can perform the exam efficiently. Hinge screw 120 is tightened to hold the angle of the x-ray detector in place. As illustrated in
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[0038] As illustrated in
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[0043] Many different embodiments have been disclosed herein, in connection with the above description and the drawings. It will be understood that it would be unduly repetitious and obfuscating to literally describe and illustrate every combination and subcombination of these embodiments. Accordingly, all embodiments can be combined in any way and/or combination, and the present specification, including the drawings, shall be construed to constitute a complete written description of all combinations and subcombinations of the embodiments described herein, and of the manner and process of making and using them, and shall support claims to any such combination or subcombination.
[0044] It will be appreciated by persons skilled in the art that the present embodiment is not limited to what has been particularly shown and described hereinabove. A variety of modifications and variations are possible in light of the above teachings without departing from the following claims.